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Direct and Indirect Effects of Resource P-Limitation Differentially Impact Population Growth Life History and Body Elemental Composition of a Zooplankton Consumer

机译:资源P限制的直接和间接影响差异影响浮游动物消费者的种群增长生活史和身体元素组成

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摘要

One of the central tenets of ecological stoichiometry is that consumer growth rate is strongly determined by food phosphorus (P) content. In planktonic organisms population growth rates of zooplankton have repeatedly been shown to be reduced when fed with P-limited algal food sources. However, P-limitation may also affect other quality-related aspects of algae, such as biochemical composition or palatability. We studied the population growth, detailed life history and body elemental composition of the herbivorous rotifer, Brachionus calyciflorus, in response to three different food quality treatments: algae cultured in high phosphorus conditions (average algal molar C:P ≈ 112, ‘HP’), algae cultured in low P conditions (molar C:P ≈ 631, ‘LP’) and low-P cultured algae spiked with P just before feeding (molar C:P ≈ 113, ‘LP+P’). LP+P algae thus combined high P content with a history of growth under P-limited conditions. Total P content and the C:P ratio of rotifers in the LP+P treatment equaled those of rotifers in the HP treatment. Rotifer population growth rates were higher in HP than in LP and intermediate in the LP+P treatment. Similarly, many life history traits observed for animals in the LP+P treatment, such as somatic growth rate, age at maturity, and egg production rate were also intermediate to those observed in the LP and HP treatments. However, there were important deviations from this pattern: size at first reproduction and egg mortality in the LP+P treatment equaled the HP treatment, whereas size and development time of the first eggs equaled those of the LP treatment. Our results indicate that elemental limitation cannot fully explain reduced performance of consumers fed with P-limited algae and strongly suggest that indirect, non-stoichiometric effects of P-limitation, e.g., via changes in biochemical composition or morphology of the algae also play a major role. Furthermore, our study highlights that such indirect effects have a differential impact on major fitness components and may as such also determine the population dynamics and demographic structure of consumer populations.
机译:生态化学计量的主要原则之一是,消费者的增长率很大程度上取决于食物中磷的含量。在浮游生物中,反复喂食含磷有限的藻类食物时,浮​​游动物的种群生长速率会降低。但是,P限制也可能影响藻类的其他与质量相关的方面,例如生化成分或适口性。我们针对三种不同的食品质量处理方法研究了草食性轮虫Brachionus calyciflorus的种群增长,详细的生活史和身体元素组成:在高磷条件下培养的藻类(平均藻类摩尔C:P≈112,'HP') ,在低磷条件下培养的藻类(摩尔C:P≈631,“ LP”)和在喂食前低磷培养的藻类中掺有P的藻类(摩尔C:P≈113,“ LP + P”)。因此,LP + P藻类结合了高P含量和在P受限条件下的生长史。 LP + P处理的轮虫总磷含量和C:P比值与HP处理的轮虫相同。 HP的轮虫种群增长率高于LP,而LP + P处理则中等。同样,在LP + P处理中观察到的许多动物的生命历史特征,例如体细胞生长速度,成熟年龄和产卵率,也都在LP和HP处理中观察到。但是,与这种模式存在重要的偏差:LP + P处理的初次繁殖大小和卵死亡率等于HP处理,而第一个卵的大小和发育时间等于LP处理。我们的结果表明,元素限制不能完全解释受P限制藻类喂养的消费者的性能下降,并强烈暗示P限制的间接,非化学计量效应,例如通过改变藻类的生化成分或形态也起主要作用。角色。此外,我们的研究突出表明,这种间接影响对主要健身成分有不同的影响,因此也可能决定消费群体的人口动态和人口结构。

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